CN108211114B - Postpartum pelvic floor recovery instrument - Google Patents

Postpartum pelvic floor recovery instrument Download PDF

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Publication number
CN108211114B
CN108211114B CN201711461898.2A CN201711461898A CN108211114B CN 108211114 B CN108211114 B CN 108211114B CN 201711461898 A CN201711461898 A CN 201711461898A CN 108211114 B CN108211114 B CN 108211114B
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treatment head
pelvic floor
electromagnet
electromagnets
track
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CN108211114A (en
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黄欢
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Chongqing Sunloading Health Ind Co ltd
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Chongqing Sunloading Health Ind Co ltd
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N1/00Electrotherapy; Circuits therefor
    • A61N1/18Applying electric currents by contact electrodes
    • A61N1/32Applying electric currents by contact electrodes alternating or intermittent currents
    • A61N1/36Applying electric currents by contact electrodes alternating or intermittent currents for stimulation
    • A61N1/36014External stimulators, e.g. with patch electrodes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N2/00Magnetotherapy
    • A61N2/002Magnetotherapy in combination with another treatment

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Biomedical Technology (AREA)
  • Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
  • Radiology & Medical Imaging (AREA)
  • Animal Behavior & Ethology (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Biophysics (AREA)
  • Percussion Or Vibration Massage (AREA)

Abstract

The invention discloses a postpartum pelvic floor recovery instrument capable of automatically sliding when pelvic floor recovery treatment is carried out. The postpartum pelvic floor recovery instrument comprises a box body, an electric wave generation module arranged in the box body, a treatment head electrically connected with the electric wave generation module, and a control module, wherein the control module is used for controlling the treatment head to automatically slide when the treatment head works, and the control module controls the treatment head to periodically automatically slide according to a preset track. According to the postpartum pelvic floor recovery instrument, the control module is arranged in the box body, so that the treatment head can be controlled to automatically slide on the skin of a human body when working, a patient can be subjected to pelvic floor recovery treatment without being equipped with special medical care personnel, the operation is convenient, and the labor cost is greatly saved.

Description

Postpartum pelvic floor recovery instrument
Technical Field
The invention relates to the technical field of medical instruments, in particular to a postpartum pelvic floor recovery instrument.
Background
The postpartum pelvic floor rehabilitation therapy can be used for pelvic floor muscle training of women, so that pelvic organ prolapse, urinary incontinence and other pelvic floor dysfunctional diseases are greatly reduced. At present, postpartum pelvic floor rehabilitation therapy usually adopts postpartum pelvic floor rehabilitation therapeutic instrument, also called postpartum pelvic floor recovery instrument, and current postpartum pelvic floor recovery instrument mainly includes the box, sets up the electric wave generation module in the box to and the treatment head of being connected with the electric wave generation module electricity, its principle is: according to different frequencies output by the electric wave generator, three treatment forms of electric stimulation, electric acupuncture and moxibustion and infrared are formed, the electric wave generating module converts current into high-frequency current, and the high-frequency current is output from the electric wave circuit board and is conducted to the treatment head through the transmission line to carry out rehabilitation treatment. However, the existing postpartum pelvic floor recovery instrument mainly has the following defects: 1. when the pelvic floor treatment is carried out, medical care personnel must hold the treatment head to slide at the pelvic floor of a human body in a reciprocating mode, the treatment head cannot automatically slide, and therefore each patient who carries out pelvic floor treatment must be matched with one medical care personnel, the labor cost is high, and the operation is inconvenient. 2. When the pelvic floor rehabilitation therapy is performed, other adjuvant therapies cannot be performed, so that the treatment effect needs to be improved.
Disclosure of Invention
The invention provides a postpartum pelvic floor recovery instrument capable of automatically sliding when pelvic floor recovery treatment is carried out.
The basic scheme provided by the invention is as follows:
postpartum pelvic floor resumes appearance, including the box, set up at the inside electric wave generation module of box and the treatment head of being connected with the electric wave generation module electricity, still be equipped with control module, control module is used for controlling at treatment head during operation treatment head self-sliding.
Compared with the prior art, the postpartum pelvic floor recovery instrument has the advantages that the control module is arranged in the box body, so that the treatment head can be controlled to automatically slide on the skin of a human body when the treatment head works, a patient can carry out pelvic floor rehabilitation treatment without being equipped with special medical personnel, the operation is convenient, and the labor cost is greatly saved.
Further, the control module controls the treatment head to periodically and automatically slide according to a preset track.
The control module controls the treatment head to periodically and automatically slide according to the preset track, so that the treatment head can regularly slide on the skin of the human body, electrotherapy is carried out on the pelvic floor of the human body through periodic reciprocation, the effect is better, and the motion track of the treatment head can be ensured to be controllable.
The treatment head is adsorbed by the sequentially electrified electromagnets to realize automatic sliding of the treatment head.
Above-mentioned design, because the mode of arranging of electro-magnet can be various, the track of predetermineeing of storage also will be unrestricted almost like this, and the motion track of treatment head just can present with diversified form. For example, the moving track of the treatment head can completely fit with the acupuncture points at the pelvic floor of the human body, namely, the moving track of the treatment head passes through the key acupuncture points at the pelvic floor of the human body, and can perform targeted electrical stimulation treatment (such as temporary stay so as to perform key electrical stimulation treatment) at the key acupuncture points, so that a better treatment effect can be achieved; in addition, the device can also be used for patients with injuries to different parts of the pelvic floor in different degrees, such as patients with injuries to muscles on the left side of the pelvic floor, patients with injuries to the right side of the pelvic floor and patients with injuries to the two sides of the pelvic floor, so that targeted track presetting can be performed on different parts, and the device can be realized by only modifying or increasing preset tracks in procedures, and can meet the requirements of different patients.
Further, when the electromagnet is electrified, the electromagnet is in contact with the skin of the human body.
The design can be used as a driving structure for the sliding of the treatment head on one hand, and can play a role in assisting magnetic therapy when the electromagnet is contacted with the skin of a human body due to the magnetic force generated by the electromagnet on the other hand, so that the effect of the rehabilitation treatment of the pelvic floor of the human body can be improved.
Furthermore, vertical guiding hole has been seted up at the top of box, but treatment head protractile guiding hole and can follow the guiding hole orbit and slide in the horizontal direction, a plurality of electro-magnet sets gradually the outside of guiding hole place orbit.
Vertical guiding hole is seted up at the top of box, and the treatment head just can slide along the guiding hole at the during operation like this, and the guiding hole can play the effect of direction to the treatment head, and such design, treatment head are at the during operation, and the treatment face is up, and the human body just can lie on the back when doing pelvic floor rehabilitation, and the position that just can adopt more comfortable treats in having porose bed at the pelvic floor department like this. The electromagnet is arranged on the outer side of the track where the guide hole is located, namely arranged along the track where the guide hole is located, so that the motion track of the treatment head adsorbed by the electromagnet in sequence can be ensured to be along the guide hole.
Furthermore, still including being located the clamping part in the box, the inner of clamping part is used for the centre gripping the treatment head a round first guide way has been seted up on the inside wall on box upper portion, the outer end of clamping part stretches into in the first guide way be equipped with the metal object on the clamping part, the metal object can be attracted in proper order by each electro-magnet and follow the orbit motion of electro-magnet place to drive the clamping part and follow the orbit motion of electro-magnet place.
The clamping part that sets up can ensure that the treatment head is more stable when moving, and the first guide way of setting not only plays the effect of support to the clamping part, when the clamping part moved, played the effect of direction moreover, prevents that the orbit of clamping part from taking place to deviate.
Furthermore, a plurality of massage heads are arranged on the inner side of the track where the guide hole is located, a plurality of extrusion switches which are used for controlling the on-off of the massage heads in a one-to-one mode are arranged on the hole side wall of the guide hole, and the treatment heads can touch the extrusion switches when sliding along the guide hole to enable the massage heads to be powered on.
Above-mentioned design, when the treatment head moves along the guiding hole, can extrude in proper order the extrusion switch to start each massage head in proper order, thereby massage treatment to the pelvic floor department outside the treatment head orbit, in order to reach better treatment.
Furthermore, a second guide groove is formed in the inner side of the top of the box body along the track where the electromagnet is located, and the metal object extends into the second guide groove.
Through the second guide groove, when the metal object is adsorbed by each electromagnet, the moving track of the metal object is ensured not to deviate.
Furthermore, the electromagnet arrays are arranged on a covering, the distance between every two adjacent electromagnets is larger than the overall dimension of the treatment head, and a metal object capable of being adsorbed by the electromagnets is arranged on the side surface of the treatment head.
The invention is another design scheme, the electromagnet is arranged on the covering, the human body can adopt a prone position, the covering is covered at the pelvic floor of the human body or worn on the human body, and the electromagnets arranged in an array on the covering sequentially adsorb the metal objects arranged on the side surface of the treatment head according to a preset track, so that the treatment head slides on the skin of the human body, and the automatic sliding of the treatment head is realized. The distance between two adjacent electromagnets is larger than the overall dimension of the treatment head, so that the treatment head is prevented from being clamped by the two adjacent electromagnets during movement.
The electric wave generating module is connected with the treatment head, the treatment head is arranged on the electric wave generating module, the transmission line is provided with a connecting ring at a position close to the treatment head, the electric wave generating module further comprises a sucker capable of being adsorbed on the skin of a human body, a connecting column is arranged at the top of the sucker, the connecting ring can be sleeved on the connecting column, the electromagnets are arranged on the disk surface of the sucker in a scattering mode, and metal objects capable of being sequentially adsorbed by the electromagnets are arranged on the transmission line.
The treatment head is adsorbed on the skin of a human body through the sucking disc, a supporting point is provided, then the connecting ring is sleeved on the connecting column, the control module controls the electromagnets to be sequentially powered on and powered off, and the treatment head can rotate and slide on the skin of the human body by taking the sucking disc as a center, so that the aim of automatic sliding treatment is fulfilled.
Drawings
Fig. 1 is a schematic structural diagram of a box body according to a first embodiment of the present invention.
Fig. 2 is a schematic structural diagram of a case cover according to a first embodiment of the invention.
Fig. 3 is a schematic structural diagram of a connection socket according to an embodiment of the invention.
Fig. 4 is a schematic structural diagram of a clamping portion according to a first embodiment of the invention.
Fig. 5 is a schematic structural diagram of a third embodiment of the present invention.
Fig. 6 is a schematic structural diagram of a fourth embodiment of the present invention.
Fig. 7 is a schematic structural diagram of a second embodiment of the present invention.
Detailed Description
The following is further detailed by the specific embodiments:
example one
The reference numerals in the first embodiment include: the treatment head comprises a box body 1, a box cover 2, a treatment head placing hole 4, a wiring socket 5, a sliding groove 501, an opening 502, an electromagnet strip 503, a guide hole 601, an electromagnet 602, a massage head 603, a clamping part 604, a clamping jaw 605, a sliding block 606, a reinforcing rib 607, a metal object 608 and a treatment head 7.
The postpartum pelvic floor restoration instrument shown in fig. 1 comprises a box body, wherein the box body can be a hollow polygonal prism or a cylinder, the hollow polygonal prism is preferred in the embodiment, a self-locking universal wheel is arranged at the bottom of the box body, a box cover 2 detachably connected with the box body through a bolt is arranged at the top of the box body, the outer edge of the box cover 2 in the embodiment protrudes out of the side face of the box body, a vertically through treatment head placing hole 4 is formed in the box cover 2, one side, facing the treatment head placing hole 4, is opened and used for inserting each treatment head, the number of the treatment head placing holes 4 in the embodiment is three, an operation panel is obliquely arranged between the box cover 2 and the side face of the box body, and a display screen is arranged on the operation panel (not shown. The side direction of the box body is provided with heat dissipation holes, and the heat dissipation holes are provided with radiators.
An electric wave generation module, a control module and a storage module are arranged in the box body, the electric wave generation module is used for generating various electric waves for the bottom-of-dish physiotherapy, and the electric wave generation module is electrically connected with the treatment head 7. The treatment heads 7 in this embodiment are divided into three types, which are an electric wave treatment head, an electric acupuncture treatment head and an infrared treatment head.
Specifically, in the present embodiment, the connection between the radio wave generating module and the treatment head 7 is as follows: in this embodiment, the electric wave generating module is specifically an electric wave generating circuit, the electric wave generating circuit is integrated on an electric wave generating circuit board, an electric wave output interface is arranged on the electric wave generating circuit board, the electric wave output interface is led out to the connection socket 5 through a flat cable, and the connection socket 5 in this embodiment has three, and the three structures are the same. As shown in fig. 3, a mounting hole for mounting the connection socket 5 is formed in a side wall of the housing, a sliding groove 501 having an arc-shaped longitudinal section is formed in the side wall of the mounting hole, an opening 502 is formed at one end of the sliding groove 501 on a wall of the outward-facing sliding groove 501, and the opening 502 of the sliding groove 501 faces the side wall of the mounting hole.
Connection socket 5's structure is including inlaying the connector body in the mounting hole, and the connector body adopts many conductive pins to pass through insulating rubber casting moulding, and the connector body outer wall is provided with the cladding and is in the outside connecting pipe of connector body, the connecting pipe setting is on a mount pad, the mount pad is fixed to be set up on the box lateral wall the side of connector body is equipped with an electromagnetism strip 503, electromagnetism strip 503 concatenates in among the power supply circuit in the module takes place for the electric wave to when putting through this postpartum coiled stock resume the total power of appearance, electromagnetism strip 503 can be circular telegram, electromagnetism strip 503 dodges and opens the connecting pipe is arranged in opening 502 is kept away from to spout 501 in the one end.
This embodiment still includes three plug, and the one end of three plug is connected with three transmission lines respectively, and three transmission lines all are connected on the one side that deviates from mutually with the treatment face, and the other end of three plug is used for being connected with three connection socket 5 respectively. The side surface of each plug is provided with a metal strip, the shape of the metal strip is matched with that of the opening 502, when the plug is in butt joint with the wiring socket 5, the metal strip can be embedded into the opening 502, and when the electromagnet strip 503 is electrified, the metal strip slides to the electromagnet strip 503 along the sliding groove 501 through the attraction force of the electromagnet strip 503, so that the plug is positioned after being driven to rotate for a certain angle, and the plug is just connected with the wiring socket 5. In this embodiment, the angle of the plug rotated by the iron bar is preferably 30 degrees. The connection mode of the connection socket 5 and the plug can realize quick plug and quick connection of the connection socket 5 and the plug, and is convenient to operate.
In addition, in this embodiment, a sealing block (not shown in the figure) whose upper end is hinged to the upper portion of the opening 502 is further disposed at the opening 502, the sealing block can achieve self-locking when being turned down to block the opening 502, and can also achieve positioning when being turned up to be attached to the outer wall of the box body, when wanting to block external dust from entering the chute 501, or wanting to block external dust from entering the chute 501, because the radio wave generating module is not energized, the electromagnet strip 503 does not work, wanting to block the metal strip from falling off from the chute 501, the sealing block can be turned down to block the opening 502 and locked, and when not needing to block the opening 502, the sealing block can be turned up to be attached to the outer wall of the.
The control module of this embodiment preferably adopts the singlechip, control module is used for controlling when treatment head 7 works treatment head 7 automatic sliding, the storage module is used for storing the preset orbit that represents each electro-magnet 602 circular telegram order in proper order, and more specifically of this embodiment, control module with preset orbit control treatment head 7 periodic automatic sliding. In this embodiment, the mode that the control module controls the therapy head 7 to periodically slide along the preset track is as follows: through the circular telegram realization in proper order of a plurality of electro-magnet 602 that sets up, control module is according to the corresponding each electro-magnet 602 circular telegram of presetting the track control outage of storage, treatment head 7 is adsorbed in order to realize the automatic sliding of treatment head 7 by electro-magnet 602 that switches on in proper order, more specifically, be the automatic sliding of intermittent type nature in a cycle, this embodiment also can be to the patient of the different position injuries of pelvic floor different degree, some patients are pelvic floor left side muscle injury, some are the right side, some are two sides, just so can carry out the orbit of pertinence to different positions and predetermine, as long as it predetermines the orbit and just can realize to modify or increase in the procedure, can satisfy different patient's demand. In the design scheme of this embodiment, as long as the electromagnet 602 is designed to have a sufficiently large magnetic field when energized, the metal objects 608 can be completely and sequentially adsorbed, and the risk that the entire clamping portion 604 is likely to fall off is avoided, so that details are not described herein. In this embodiment, when the electromagnets 602 are energized, the electromagnets 602 are in contact with the skin of the human body, so that the electromagnets 602 not only serve as a driving structure for realizing automatic sliding of the therapy head 7, but also can generate a certain magnetic therapy effect on the human body (here, the pelvic floor) when the electromagnets 602 are sequentially and alternately energized and de-energized, and simultaneously play a role in assisting health care therapy.
In this embodiment, more specifically, the arrangement of the electromagnets 602 is as follows: as shown in fig. 2, a vertical guide hole 601 is formed in the case cover, in this embodiment, the case cover 2 is disposed at the top of the case body, so the guide hole 601 is disposed on the case cover 2, the therapy head 7 can extend out of the guide hole 601 and can slide in the horizontal direction along the track where the guide hole 601 is located, one end of the guide hole 601 in this embodiment extends out of the edge of the top of the case body, when the head of the therapy head 7 slides in the guide hole 601, the head is supported on the top surface around the guide hole 601, that is, the size of the head of the therapy head 7 is larger than the aperture of the guide hole 601, and since one end of the guide hole 601 extends out of the edge of the top of the case body, such a design can be adopted that the therapy head 7 smoothly slides out of the end of the guide hole 601 after working so as to be clamped in the therapy head placement hole 4.
In this embodiment, the track main part (namely, when the treatment head 7 works, the sliding track) where the guide hole 601 is located is in a semicircular arc shape, the plurality of electromagnets 602 are sequentially arranged on the outer side of the track where the guide hole 601 is located, the number of the electromagnets 602 in this embodiment is 8, specifically, 8 mounting holes are sequentially arranged on the box cover along the outer side of the track where the guide hole is located, and the 8 electromagnets are respectively arranged in the mounting holes. The upper end of the electromagnet 602 extends out of the case cover 2, the lower end of the electromagnet 602 is flush with the lower bottom surface of the case cover 2, so that the electromagnet 602 cannot block the movement of the clamping part 604 for clamping the treatment head 7 due to the fact that the electromagnet extends out of the lower bottom surface of the case cover 2, the electromagnet 602 extending out of the upper end of the case cover 2 can contact the skin of a human body when a postpartum woman performs pelvic floor rehabilitation, and the magnetic field generated by the electromagnet 602 plays a role in assisting electromagnetic therapy on the pelvic floor part which the treatment head 7 cannot contact. In this embodiment, the arrangement of the electromagnets 602 can be arranged according to the acupoints on the pelvic floor of the human body (each electromagnet 602 corresponds to each acupoint on the pelvic floor of the human body), so as to better assist the magnetic therapy. Meanwhile, as the electromagnets 602 are arranged in this way, the therapeutic head 7 can also perform focused and targeted electrical stimulation therapy at each acupuncture point of the pelvic floor of the human body when in work so as to achieve the purpose of more treatment.
By using the postpartum pelvic floor recovery instrument of the embodiment, as the treatment head 7 is upward during working, a bed with holes at the pelvic floor can be used, and postpartum women lie on the bed with their backs up and the pelvic floor is downward, so that the treatment head 7 can be in contact with the skin of the pelvic floor, and the sequentially energized electromagnets 602 can also be in contact with the skin. Compared with the prior art, the lying mode is more comfortable and humanized.
In this embodiment, as shown in fig. 4, the holding portion 604 is located inside the box body, two clamping jaws 605 are oppositely arranged at the inner end (the end facing the center of the box body) of the holding portion 604, a layer of elastic pad is arranged on the inner side surfaces of the two clamping jaws 605, and the size of the space between the two clamping jaws 605 is smaller than the outer diameter of the lower part of each treatment head 7. Thus, the lower part of the treatment head 7 is clamped between the two clamping jaws 605, and the purpose of stabilizing the treatment head 7 can be achieved.
The first guide way of round has been seted up on the inside wall on box upper portion, the outer end of clamping part 604 stretches into in the first guide way, like this when clamping part 604 moves, through first guide way, both can be used for supporting the outer end of clamping part 604, can lead to the motion of clamping part 604 again, make the motion of clamping part 604 more stable. In this embodiment, in order to make the therapeutic head 7 tightly contact the skin of the human body when operating, a third guide groove is further disposed on the inner wall of the box body below the first guide groove, a sliding block 606 is disposed in the third guide groove, and a reinforcing rib 607 obliquely connected to the bottom surface of the clamping portion 604 is disposed on the outer side surface of the sliding block 606.
A metal object 608 is arranged on the clamping portion 604, the metal object 608 should be kept substantially vertical when the treatment head 7 works, the metal object 608 in this embodiment is more specifically an elongated iron bar, a second guide groove is arranged on the bottom surface of the box cover along the track of the electromagnet 602, and the metal object 608 extends into the second guide groove. The metal object 608 can be sequentially attracted by the electromagnets 602 to move along the track of the electromagnets 602, so as to drive the clamping portion 604 to move along the track of the electromagnets 602.
In this embodiment, further, since the track main body where the guiding hole 601 is located is in a semi-circular arc shape, the preset track in the storage module in this embodiment is also in a semi-circular arc shape, that is, the control module in this embodiment sequentially controls each electromagnet 602 to be turned on and off from one end (the left end in this embodiment) according to the semi-circular arc-shaped track preset in the storage module, and sequentially controls each electromagnet 602 to be turned on and off from the other end until the other end returns to the beginning end, which is a periodic motion, that is, the control module controls the therapeutic head 7 to periodically and automatically slide for one circle by using the preset track.
In this embodiment, in order to avoid that the metal object 608 is not absorbed instantaneously due to the fact that the previous electromagnet 602 is powered off and the next electromagnet 602 is not powered on, and the whole clamping portion 604 is easy to drop, in this embodiment, the control module controls the next electromagnet 602 to be powered on when the previous electromagnet 602 is controlled to be powered on but not powered off, so as to ensure that the metal object 608 can be absorbed all the time. In this embodiment, the setting of the delay time is realized by connecting the single chip microcomputer to the peripheral delay circuit, for example, the delay time may be set such that the energization time of the previous electromagnet 602 is 5S, the subsequent electromagnet 602 starts to be energized after the 4 th second, the energization time is also 5S, the previous electromagnet 602 is de-energized after 5S, and the energization and de-energization of each electromagnet 602 is performed sequentially.
In this embodiment, in order to achieve the purpose of better assisting rehabilitation therapy, a plurality of massage heads 603 are arranged along the inner side of the track where the guide hole 601 is located, the preferred number of the massage heads 603 is 8, a plurality of extrusion switches (not shown in the figure) which are in one-to-one correspondence with the massage heads 603 and used for controlling the on/off of the massage heads 603 are arranged on the hole side wall of the guide hole 601, and the therapy head 7 can touch the extrusion switches to enable the massage heads 603 to be powered on when sliding along the guide hole 601. When the treatment head 7 slides along the guide hole 601, the respective massage heads 603 are sequentially energized, and the massage treatment can be assisted to the portion which is not contacted by the treatment head 7.
Example two
As shown in fig. 7, the reference numerals in the present embodiment include: guide chute 301, guide slide bar 302, push switch 303.
The difference between this embodiment and the first embodiment is that the track of the guiding hole formed on the box cover is circular, a circle of guiding sliding groove is formed on the side wall of the guiding hole close to the outside, the guiding sliding groove is communicated with the mounting hole where each electromagnet is located, a push switch 303 which makes the electromagnet electrified when being pressed is arranged at the position of the groove wall of the guiding sliding groove corresponding to each electromagnet, in this embodiment, after the push switch 303 is pressed, the time delay of the electrification of the electromagnet is 5S and then the electromagnet is not electrified, the control module in this embodiment includes each push switch 303 and a guiding sliding bar 302, one end of the guiding sliding bar 302 is fixed with the lower part of the treatment head, specifically, the connection part of the treatment head and the guiding sliding bar 302 is located in the lateral direction of the guiding sliding bar 302, a metal collar is arranged at the end of the guiding sliding bar 302 close to the treatment head, when the therapeutic head works, the guide sliding strip 302 can slide along the guide sliding groove, so that the therapeutic head is driven to slide along the track where the guide hole is located. In this embodiment, the guide slide bar 302 is arc-shaped, and the arc-shaped length from the metal collar to the guide slide bar 302 at the end far away from the therapy head is greater than the distance between two adjacent push switches 303 and less than the distance between three adjacent electromagnets.
Specifically, the sliding principle of the guide slider 302 is as follows: firstly, one end of the guide sliding strip 302 far away from the therapeutic head is inserted into the guide sliding groove, the first press switch 303 is pressed by the end of the guide sliding strip 302, so that the corresponding first electromagnet is electrified, the electrified electromagnet attracts the metal lantern ring at one end of the guide sliding strip 302 close to the therapeutic head, so that the guide sliding strip 302 is pushed forwards along the guide sliding groove, because the arc length from the metal lantern ring to the guide sliding strip 302 far away from one end of the therapeutic head is greater than the distance between two adjacent press switches 303 and smaller than the distance between three adjacent electromagnets, when the metal lantern ring is not attracted with the first electromagnet, one end of the guide sliding strip 302 far away from the therapeutic head is pressed down the second press switch 303, so that the second electromagnet is electrified, the guide sliding strip 302 is continuously pushed forwards until being adsorbed by the first electromagnet, and because the time delay of the electrified electromagnet is 5S after the press switch 303 is pressed down, therefore, after the time delay of 5S, the first electromagnet will not be electrified, and at this time, because the second electromagnet is also electrified, the guide slide bar 302 continues to move along the guide chute under the attraction of the second electromagnet, so that the guide slide bar 302 carries the therapeutic head to slide along the guide hole for a circle for one cycle, and then continues to the next cycle until the treatment is completed. This embodiment, ingenious structural design through direction spout, push switch 303 and direction draw runner 302, when using, need not other controls, and direction draw runner 302 can push down push switch 303 by oneself, makes the electro-magnet electrified in proper order to under the adsorption affinity of the electro-magnet electrified in proper order, realize the self-sliding on the direction spout.
EXAMPLE III
The reference numerals in the third embodiment include: a covering 801, an electromagnet 802, a treatment head 803 and a metal object 804.
As shown in fig. 5, unlike the first embodiment, in the present embodiment, the plurality of electromagnets 802 are arranged in an array on a cover, the number of the electromagnets 802 in the array in the present embodiment is 16, the cover can be a hard object, such as a plate, or a soft object, such as a blanket or wearable trousers, the present embodiment is preferably a blanket, the distance between two adjacent electromagnets 802 is greater than the external dimension of the treatment head 803, so that the treatment head 803 cannot be stuck by the adjacent electromagnets 802 during movement, a metal 804 capable of being adsorbed by the electromagnets 802 is arranged on the side of the treatment head 803, and the present embodiment is preferably an iron layer covering three sides of the outer ring of the treatment head 803 (not including the side connected to the transmission line), so that the adsorption of the treatment head 803 by any electromagnet 802 in the array is not affected. In this embodiment, the transmission lines connected to the treatment head 803 are all connected to the side adjacent to the treatment surface.
As shown in fig. 5, in this embodiment, when the human body is treated, the user needs to lie on the bed, the treatment head 803 can cover the covering on the pelvic floor of the human body when the treatment head is used, then the treatment head 803 starts to work, the control module controls the electromagnets 802 to be powered on and powered off according to the preset track, so as to sequentially attract the treatment head 803, and the treatment head 803 can slide along the skin of the human body under the action of the gravity of the treatment head 803, so that the purpose that the treatment head 803 automatically slides on the pelvic floor of the human body is achieved.
In this embodiment, since the covering is covered on the pelvic floor, the treatment head 803 is also pressed on the pelvic floor, and therefore, even if the previous electromagnet 802 is powered off, the subsequent electromagnet 802 is not powered on or off, and the treatment head 803 is not caused to slide off, in this embodiment, the control module controls the power on or off of each electromagnet 802, which may be intermittent in time (the previous electromagnet 802 is powered off after a certain time delay, and the subsequent electromagnet 802 is powered on), continuous (the previous electromagnet 802 is powered off, and the subsequent electromagnet 802 is powered on at the same time), or crossed (the previous electromagnet 802 is powered on before the power off.
In the embodiment, the electromagnets which are sequentially electrified are also sequentially contacted with the skin of the human body, so as to play a role of assisting magnetic therapy on the pelvic floor of the human body, the control module sequentially controls the on-off of each electromagnet from one end (the end where the first electromagnet is electrified) to the other end (the end where the last electromagnet is electrified in the period) according to the preset track in the storage module, and then sequentially controls the on-off of each electromagnet from the other end until the electromagnet returns to the beginning end, which is a periodic sliding of the treatment head, since the transmission line is wound on a part of the electromagnet from the beginning and then returns to the beginning even in the previous board period, but in the latter half period the therapy head is returned back along the way and the previous winding can be released, i.e. in total, the transmission line is not wound with the electromagnet during one period.
Example four
The reference numerals in the fourth embodiment include: suction cup 901, connecting column 902, connecting ring 903, electromagnet 904, metal 905, transmission line 906 and treatment head 907.
As shown in fig. 6, the present embodiment is different from the first embodiment in that: the transmission lines 906 connected with the treatment head 907 are connected to the side face adjacent to the treatment face, a connection ring 903 is arranged on the transmission lines 906 close to the treatment head 907, the treatment head 907 further comprises a suction cup capable of being adsorbed on the skin of a human body, a connection column 902 is arranged at the top of the suction cup, the connection ring 903 can be sleeved on the connection column 902, namely before the treatment head 907 is used, the connection ring 903 is firstly sleeved on the connection column 902 to provide a supporting point for the treatment head 907 through the suction cup, the electromagnets 904 are arranged on the disc face of the suction cup in a semi-circle mode, the number of the electromagnets 904 in the embodiment is 8, metal objects 905 capable of being sequentially adsorbed by the electromagnets 904 are arranged on the transmission lines 906, and the metal blocks in the embodiment are iron blocks. The electromagnets 904 are arranged on the surface of the sucker in a scattering manner.
In this embodiment, in order to prevent the therapy head 907 from being used, the transmission line 906 is wound on the connection column 902, so the electromagnet 904 is arranged on the plate surface of the sucker in a semi-circle form, so the therapy head 907 can automatically slide across the pelvic floor skin in a semi-circle sector when in use, and in the sliding process, due to the gravity of the therapy head 907, the therapy head 907 can be basically ensured to slide close to the skin of a human body, and one cycle is formed by one round of reciprocating. Similarly, in this embodiment, the control module controls the power on/off of each electromagnet 904, which may be intermittent in time (after the previous electromagnet 904 is powered off and delayed for a certain time, the next electromagnet 904 is powered on), continuous (the previous electromagnet 904 is powered off and the next electromagnet 904 is powered on at the same time), or crossed (the previous electromagnet 904 is powered off and the next electromagnet 904 is powered on).

Claims (6)

1. Postpartum pelvic floor resumes appearance, include the box, set up at the inside electric wave generation module of box and the treatment head of being connected with the electric wave generation module electricity, its characterized in that: the control module is used for controlling the therapeutic head to automatically slide when the therapeutic head works;
the control module controls the periodic automatic sliding of the treatment head by a preset track;
the control module controls the corresponding electromagnets to be switched on and off according to the stored preset track, and the treatment head is adsorbed by the electromagnets which are sequentially switched on so as to realize the automatic sliding of the treatment head;
the top of the box body is provided with a vertical guide hole, the treatment head can extend out of the guide hole and can slide in the horizontal direction along the track where the guide hole is located, and the electromagnets are sequentially arranged on the outer side of the track where the guide hole is located;
the treatment head is characterized by further comprising a clamping part located in the box body, the inner end of the clamping part is used for clamping the treatment head, a circle of first guide groove is formed in the inner side wall of the upper portion of the box body, the outer end of the clamping part extends into the first guide groove, a metal object is arranged on the clamping part and can be attracted by each electromagnet in sequence to move along the track where the electromagnets are located, and therefore the clamping part is driven to move along the track where the electromagnets are located.
2. The postpartum pelvic floor restoration instrument according to claim 1, characterized in that: when the electromagnet is electrified, the electromagnet is in contact with the skin of a human body.
3. The postpartum pelvic floor restoration instrument according to claim 1, characterized in that: the inner side of the track where the guide hole is located is provided with a plurality of massage heads, the hole side wall of the guide hole is provided with a plurality of extrusion switches which are one-to-one applied to the massage heads to control the power-on and power-off of the massage heads, and the treatment heads can touch the extrusion switches to enable the massage heads to be powered on when sliding along the guide hole.
4. The postpartum pelvic floor restoration instrument according to claim 1, characterized in that: and a second guide groove is formed in the inner side of the top of the box body along the track where the electromagnet is located, and the metal object extends into the second guide groove.
5. The postpartum pelvic floor restoration instrument according to claim 1, characterized in that: the electromagnet arrays are arranged on a covering, the distance between every two adjacent electromagnets is larger than the overall dimension of the treatment head, and a metal object capable of being adsorbed by the electromagnets is arranged on the side surface of the treatment head.
6. The postpartum pelvic floor restoration instrument according to claim 1, characterized in that: the electric wave generating device comprises an electric wave generating module, a treatment head, a connecting ring and a sucker, wherein the electric wave generating module is connected with the treatment head, the connecting ring is arranged on the transmission line and close to the treatment head, the sucker can be adsorbed on the skin of a human body, a connecting column is arranged at the top of the sucker, the connecting ring can be sleeved on the connecting column, a plurality of electromagnets are arranged on the disc surface of the sucker in a scattering manner, and metal objects which can be sequentially adsorbed by the electromagnets are arranged on the transmission line.
CN201711461898.2A 2017-12-28 2017-12-28 Postpartum pelvic floor recovery instrument Active CN108211114B (en)

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